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涉及乙炔和亚乙烯基连接基的苊基自由基体系二阶超极化率的理论研究:双自由基特性和自旋多重度依赖性

Theoretical study on the second hyperpolarizabilities of phenalenyl radical systems involving acetylene and vinylene linkers: diradical character and spin multiplicity dependences.

作者信息

Ohta Suguru, Nakano Masayoshi, Kubo Takashi, Kamada Kenji, Ohta Koji, Kishi Ryohei, Nakagawa Nozomi, Champagne Benoît, Botek Edith, Takebe Akihito, Umezaki Shin-ya, Nate Masahito, Takahashi Hideaki, Furukawa Shin-ichi, Morita Yasushi, Nakasuji Kazuhiro, Yamaguchi Kizashi

机构信息

Department of Materials Engineering Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.

出版信息

J Phys Chem A. 2007 May 10;111(18):3633-41. doi: 10.1021/jp0713662. Epub 2007 Apr 17.

Abstract

We have investigated the static second hyperpolarizabilities (gamma) of the singlet diradical systems with intermediate diradical character involving phenalenyl radicals connected by acetylene and vinylene pi-conjugated linkers, 1 and 2, using the hybrid density functional theory. For comparison, we have also examined the gamma values of the closed-shell and pure diradical systems with almost the same molecular size as 1 and 2. In agreement with our previous prediction of the diradical character dependence of gamma, it turns out that the gamma values of 1 and 2 are significantly enhanced compared to those of the closed-shell and pure diradical systems. In the present case, distinct differences in gamma values are not observed between the two pi-conjugated linkers, though the diradical character is found to depend on the kind of linker. Furthermore, we have investigated the spin multiplicity effect on gamma. Changing from the singlet to the triplet state, the gamma values of the systems with intermediate diradical character in the singlet state are quite reduced, though those of the pure diradical systems are hardly changed. Such spin multiplicity dependence of gamma is understood by considering the difference of diradical character between their singlet states together with the Pauli principle. The present results provide a possibility of a novel control scheme of gamma for phenalenyl radical systems involving pi-conjugated linkers by adjusting the diradical character through the change of the linked position of pi-conjugated linkers and the spin multiplicity.

摘要

我们使用杂化密度泛函理论研究了具有中间双自由基特征的单线态双自由基体系的静态二阶超极化率(γ),该体系涉及通过乙炔和亚乙烯基π共轭连接基相连的苊烯基自由基,即1和2。为作比较,我们还研究了与1和2分子大小几乎相同的闭壳层和纯双自由基体系的γ值。与我们之前对γ与双自由基特征相关性的预测一致,结果表明,与闭壳层和纯双自由基体系相比,1和2的γ值显著增强。在当前情况下,尽管发现双自由基特征取决于连接基的种类,但在两种π共轭连接基之间未观察到γ值的明显差异。此外,我们研究了自旋多重性对γ的影响。从单线态转变为三线态时,单线态下具有中间双自由基特征的体系的γ值大幅降低,而纯双自由基体系的γ值几乎不变。通过考虑它们单线态之间双自由基特征的差异以及泡利原理,可以理解γ的这种自旋多重性依赖性。目前的结果为通过调整π共轭连接基的连接位置和自旋多重性来改变双自由基特征,从而对涉及π共轭连接基的苊烯基自由基体系实现γ的新型控制方案提供了可能性。

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